Kras is the most frequently mutated ras family member in lung carcinomas, whereas Hras mutations are common in tumors from stratified epithelia such as the skin. Using a Hras knock-in mouse model, we demonstrate that specificity for Kras mutations in lung and Hras mutations in skin tumors is determined by local regulatory elements in the target ras genes. Although the Kras 4A isoform is dispensable for mouse development, it is the most important isoform for lung carcinogenesis in vivo and for the inhibitory effect of wild-type (WT) Kras on the mutant allele. Kras 4A expression is detected in a subpopulation of normal lung epithelial cells, but at very low levels in lung tumors, suggesting that it may not be required for tumor progression. The two Kras isoforms undergo different post-translational modifications; therefore, these findings can have implications for the design of therapeutic strategies for inhibiting oncogenic Kras activity in human cancers

Kras regulatory elements and exon 4A determine mutation specificity in lung cancer / To, M. D.; Wong, C. E.; Karnezis, A. N.; DEL ROSARIO, R.; DI LAURO, Roberto; Balmain, A.. - In: NATURE GENETICS. - ISSN 1061-4036. - STAMPA. - 40:10(2008), pp. 1240-1244. [10.1038/ng.211]

Kras regulatory elements and exon 4A determine mutation specificity in lung cancer.

DI LAURO, ROBERTO;
2008

Abstract

Kras is the most frequently mutated ras family member in lung carcinomas, whereas Hras mutations are common in tumors from stratified epithelia such as the skin. Using a Hras knock-in mouse model, we demonstrate that specificity for Kras mutations in lung and Hras mutations in skin tumors is determined by local regulatory elements in the target ras genes. Although the Kras 4A isoform is dispensable for mouse development, it is the most important isoform for lung carcinogenesis in vivo and for the inhibitory effect of wild-type (WT) Kras on the mutant allele. Kras 4A expression is detected in a subpopulation of normal lung epithelial cells, but at very low levels in lung tumors, suggesting that it may not be required for tumor progression. The two Kras isoforms undergo different post-translational modifications; therefore, these findings can have implications for the design of therapeutic strategies for inhibiting oncogenic Kras activity in human cancers
2008
Kras regulatory elements and exon 4A determine mutation specificity in lung cancer / To, M. D.; Wong, C. E.; Karnezis, A. N.; DEL ROSARIO, R.; DI LAURO, Roberto; Balmain, A.. - In: NATURE GENETICS. - ISSN 1061-4036. - STAMPA. - 40:10(2008), pp. 1240-1244. [10.1038/ng.211]
File in questo prodotto:
File Dimensione Formato  
To MD et al.pdf

non disponibili

Tipologia: Documento in Post-print
Licenza: Accesso privato/ristretto
Dimensione 614.87 kB
Formato Adobe PDF
614.87 kB Adobe PDF   Visualizza/Apri   Richiedi una copia

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/347060
Citazioni
  • ???jsp.display-item.citation.pmc??? 65
  • Scopus 104
  • ???jsp.display-item.citation.isi??? 99
social impact